Patent classifications
B60B3/12
WHEEL, DRIVE WHEEL AND WHEELCHAIR
The disclosure provides a wheel, drive wheel and wheel chair. The wheel includes an annular rim and a disk covering the rim on one side in an axial direction of the rim. The disk of the wheel includes a skin and a cushion member. The skin is formed of a fiber-reinforced material. The cushion member includes a cushion part and a shape retaining part. The cushion part is formed of a shock absorbing material and is disposed adjacent to the skin. The shape retaining part is formed of a fiber-reinforced material and is disposed adjacent to the cushion part.
WHEEL, DRIVE WHEEL AND WHEELCHAIR
The disclosure provides a wheel, drive wheel and wheel chair. The wheel includes an annular rim and a disk covering the rim on one side in an axial direction of the rim. The disk of the wheel includes a skin and a cushion member. The skin is formed of a fiber-reinforced material. The cushion member includes a cushion part and a shape retaining part. The cushion part is formed of a shock absorbing material and is disposed adjacent to the skin. The shape retaining part is formed of a fiber-reinforced material and is disposed adjacent to the cushion part.
Truck wheel
A hybrid wheel for vehicles that includes a unitary lug structure, with a mount face and a dish section of the lug structure extending therefrom. The lug structure is usually a cast aluminum alloy. A wheel structure including a high strength polymer encapsulates a portion of the lug structure dish section. Rim ring(s) are included in the wheel structure and are preferably made of a fiber reinforced high strength polymer.
Truck wheel
A hybrid wheel for vehicles that includes a unitary lug structure, with a mount face and a dish section of the lug structure extending therefrom. The lug structure is usually a cast aluminum alloy. A wheel structure including a high strength polymer encapsulates a portion of the lug structure dish section. Rim ring(s) are included in the wheel structure and are preferably made of a fiber reinforced high strength polymer.
Vehicle wheel arrangement and method for producing a vehicle wheel arrangement
A vehicle wheel arrangement includes a wheel with a wheel hub and a carrier element for mounting the wheel on a vehicle part and/or for arrangement of a power-transmitting unit. In a joined state of the vehicle wheel arrangement a joining portion of the wheel hub corresponds with a joining portion of the carrier element. In the joined state of the vehicle wheel arrangement, the wheel hub and the carrier element are connected to one another in form-fitting fashion at least in a circumferential direction of a wheel hub axis. The wheel hub includes, in a region of the joining portion, one or more fiber plies with fibers arranged unidirectionally in the circumferential direction of the wheel hub axis. Furthermore, a method can be used to produce a vehicle wheel arrangement having a wheel hub made of fiber-reinforced composite and a carrier element.
Vehicle wheel arrangement and method for producing a vehicle wheel arrangement
A vehicle wheel arrangement includes a wheel with a wheel hub and a carrier element for mounting the wheel on a vehicle part and/or for arrangement of a power-transmitting unit. In a joined state of the vehicle wheel arrangement a joining portion of the wheel hub corresponds with a joining portion of the carrier element. In the joined state of the vehicle wheel arrangement, the wheel hub and the carrier element are connected to one another in form-fitting fashion at least in a circumferential direction of a wheel hub axis. The wheel hub includes, in a region of the joining portion, one or more fiber plies with fibers arranged unidirectionally in the circumferential direction of the wheel hub axis. Furthermore, a method can be used to produce a vehicle wheel arrangement having a wheel hub made of fiber-reinforced composite and a carrier element.
WHEEL
The invention relates to a wheel, comprising a metal disk and a rim which rim comprises a metal part and a continuous fiber reinforced composite part present on an outer surface of the metal part of the rim, wherein the continuous fiber reinforced composite part comprises a semi-crystalline polyamide with a melting temperature of at least 180 C. The invention also relates to a process for preparing a wheel as well as a tape for use in production of the wheel.
WHEEL
The invention relates to a wheel, comprising a metal disk and a rim which rim comprises a metal part and a continuous fiber reinforced composite part present on an outer surface of the metal part of the rim, wherein the continuous fiber reinforced composite part comprises a semi-crystalline polyamide with a melting temperature of at least 180 C. The invention also relates to a process for preparing a wheel as well as a tape for use in production of the wheel.
Vehicle wheel and method for producing a vehicle wheel
A vehicle wheel for motor vehicles may include a wheel-rim ring with an opening, a main member positioned at least partially in the opening of the wheel-rim ring, and a covering shell for at least partially covering the main member. The main member may include an attachment region with receptacles for attaching the main member and the wheel-rim ring to a vehicle. The wheel is configured to have a low weight and an adequate stiffness. Moreover, the wheel also exhibits a secure attachment and no pre-load losses while permitting a high degree of design flexibility. In some examples, the attachment region of the main member is free from the covering shell by way of, for example, a cut-out in the covering shell.
Vehicle wheel and method for producing a vehicle wheel
A vehicle wheel for motor vehicles may include a wheel-rim ring with an opening, a main member positioned at least partially in the opening of the wheel-rim ring, and a covering shell for at least partially covering the main member. The main member may include an attachment region with receptacles for attaching the main member and the wheel-rim ring to a vehicle. The wheel is configured to have a low weight and an adequate stiffness. Moreover, the wheel also exhibits a secure attachment and no pre-load losses while permitting a high degree of design flexibility. In some examples, the attachment region of the main member is free from the covering shell by way of, for example, a cut-out in the covering shell.